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首页> 外文期刊>Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films >Stoichiometry and thickness of the initial oxide formed on clean titanium surfaces determined by quantitative Auger electron spectroscopy, electron energy loss spectroscopy, and microgravimetry
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Stoichiometry and thickness of the initial oxide formed on clean titanium surfaces determined by quantitative Auger electron spectroscopy, electron energy loss spectroscopy, and microgravimetry

机译:通过定量俄歇电子能谱,电子能量损失能谱和微重力法确定在干净的钛表面上形成的初始氧化物的化学计量和厚度

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The initial oxidation of a clean polycrystalline titanium film was studied by Auger electron spectroscopy (AES) and electron energy loss spectroscopy (ELS), while simultaneously monitoring the total oxygen uptake using the quartz crystal microbalance (QCM). Quantitation of the O KLL and Ti LMM AES intensities reveals that the surface stoichiometry at the initial stages of oxidation (≪100 L O2 at 1×10-5 Torr) corresponds to that expected for Ti2O3, and the ELS results also suggest the presence of the lower oxidation states of titanium (+2,+3) on the surface. The microgravimetric results indicate that the oxidation is not confined to the region sampled by the electron spectroscopic methods, and a surface layer of Ti2O3 whose thickness is ∼40 Å is consistent with the observed combination of results.
机译:使用俄歇电子能谱(AES)和电子能量损失能谱(ELS)研究了干净的多晶钛膜的初始氧化,同时使用石英晶体微量天平(QCM)监控了总的氧气吸收量。 O KLL和Ti LMM AES强度的定量显示,氧化初始阶段(1×10-5 Torr时≪ 100 L O2)的表面化学计量与Ti2O3的预期化学计量相对应,并且ELS结果也表明存在钛在表面上的较低氧化态(+ 2,+ 3)。微重力结果表明,氧化不限于通过电子光谱方法采样的区域,并且厚度为〜40的Ti2O3表面层与观察到的结果组合相一致。

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